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Fix the root cause of PR15348 by correctly handling alignment 0 on
memory intrinsics in the SDAG builder. When alignment is zero, the lang ref says that *no* alignment assumptions can be made. This is the exact opposite of the internal API contracts of the DAG where alignment 0 indicates that the alignment can be made to be anything desired. There is another, more explicit alignment that is better suited for the role of "no alignment at all": an alignment of 1. Map the intrinsic alignment to this early so that we don't end up generating aligned DAGs. It is really terrifying that we've never seen this before, but we suddenly started generating a large number of alignment 0 memcpys due to the new code to do memcpy-based copying of POD class members. That patch contains a bug that rounds bitfield alignments down when they are the first field. This can in turn produce zero alignments. This fixes weird crashes I've seen in library users of LLVM on 32-bit hosts, etc. git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@176022 91177308-0d34-0410-b5e6-96231b3b80d8
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@ -3867,6 +3867,7 @@ SDValue SelectionDAG::getMemcpy(SDValue Chain, DebugLoc dl, SDValue Dst,
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unsigned Align, bool isVol, bool AlwaysInline,
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MachinePointerInfo DstPtrInfo,
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MachinePointerInfo SrcPtrInfo) {
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assert(Align && "The SDAG layer expects explicit alignment and reservers 0");
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// Check to see if we should lower the memcpy to loads and stores first.
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// For cases within the target-specified limits, this is the best choice.
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@ -3934,6 +3935,7 @@ SDValue SelectionDAG::getMemmove(SDValue Chain, DebugLoc dl, SDValue Dst,
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unsigned Align, bool isVol,
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MachinePointerInfo DstPtrInfo,
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MachinePointerInfo SrcPtrInfo) {
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assert(Align && "The SDAG layer expects explicit alignment and reservers 0");
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// Check to see if we should lower the memmove to loads and stores first.
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// For cases within the target-specified limits, this is the best choice.
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@ -3988,6 +3990,7 @@ SDValue SelectionDAG::getMemset(SDValue Chain, DebugLoc dl, SDValue Dst,
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SDValue Src, SDValue Size,
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unsigned Align, bool isVol,
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MachinePointerInfo DstPtrInfo) {
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assert(Align && "The SDAG layer expects explicit alignment and reservers 0");
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// Check to see if we should lower the memset to stores first.
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// For cases within the target-specified limits, this is the best choice.
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@ -4467,6 +4467,8 @@ SelectionDAGBuilder::visitIntrinsicCall(const CallInst &I, unsigned Intrinsic) {
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SDValue Op2 = getValue(I.getArgOperand(1));
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SDValue Op3 = getValue(I.getArgOperand(2));
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unsigned Align = cast<ConstantInt>(I.getArgOperand(3))->getZExtValue();
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if (!Align)
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Align = 1; // @llvm.memcpy defines 0 and 1 to both mean no alignment.
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bool isVol = cast<ConstantInt>(I.getArgOperand(4))->getZExtValue();
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DAG.setRoot(DAG.getMemcpy(getRoot(), dl, Op1, Op2, Op3, Align, isVol, false,
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MachinePointerInfo(I.getArgOperand(0)),
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@ -4483,6 +4485,8 @@ SelectionDAGBuilder::visitIntrinsicCall(const CallInst &I, unsigned Intrinsic) {
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SDValue Op2 = getValue(I.getArgOperand(1));
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SDValue Op3 = getValue(I.getArgOperand(2));
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unsigned Align = cast<ConstantInt>(I.getArgOperand(3))->getZExtValue();
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if (!Align)
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Align = 1; // @llvm.memset defines 0 and 1 to both mean no alignment.
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bool isVol = cast<ConstantInt>(I.getArgOperand(4))->getZExtValue();
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DAG.setRoot(DAG.getMemset(getRoot(), dl, Op1, Op2, Op3, Align, isVol,
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MachinePointerInfo(I.getArgOperand(0))));
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@ -4500,6 +4504,8 @@ SelectionDAGBuilder::visitIntrinsicCall(const CallInst &I, unsigned Intrinsic) {
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SDValue Op2 = getValue(I.getArgOperand(1));
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SDValue Op3 = getValue(I.getArgOperand(2));
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unsigned Align = cast<ConstantInt>(I.getArgOperand(3))->getZExtValue();
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if (!Align)
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Align = 1; // @llvm.memmove defines 0 and 1 to both mean no alignment.
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bool isVol = cast<ConstantInt>(I.getArgOperand(4))->getZExtValue();
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DAG.setRoot(DAG.getMemmove(getRoot(), dl, Op1, Op2, Op3, Align, isVol,
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MachinePointerInfo(I.getArgOperand(0)),
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@ -105,3 +105,16 @@ entry:
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ret void
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}
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define void @PR15348(i8* %a, i8* %b) {
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; Ensure that alignment of '0' in an @llvm.memcpy intrinsic results in
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; unaligned loads and stores.
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; LINUX: PR15348
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; LINUX: movb
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; LINUX: movb
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; LINUX: movq
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; LINUX: movq
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; LINUX: movq
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; LINUX: movq
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call void @llvm.memcpy.p0i8.p0i8.i64(i8* %a, i8* %b, i64 17, i32 0, i1 false)
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ret void
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}
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@ -20,15 +20,18 @@ entry:
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; X86: movl $0,
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; X86: movl $0,
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; X86-NOT: movl $0,
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; X86: ret
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; XMM: xorps %xmm{{[0-9]+}}, [[Z:%xmm[0-9]+]]
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; XMM: movaps [[Z]],
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; XMM: movaps [[Z]],
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; XMM-NOT: movaps
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; XMM: ret
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; YMM: vxorps %ymm{{[0-9]+}}, %ymm{{[0-9]+}}, [[Z:%ymm[0-9]+]]
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; YMM: vmovaps [[Z]],
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; YMM-NOT: movaps
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; YMM: ret
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call void @foo( %struct.x* %up_mvd116 ) nounwind
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ret void
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@ -37,3 +40,16 @@ entry:
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declare void @foo(%struct.x*)
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declare void @llvm.memset.p0i8.i64(i8* nocapture, i8, i64, i32, i1) nounwind
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define void @PR15348(i8* %a) {
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; Ensure that alignment of '0' in an @llvm.memset intrinsic results in
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; unaligned loads and stores.
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; XMM: PR15348
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; XMM: movb $0,
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; XMM: movl $0,
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; XMM: movl $0,
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; XMM: movl $0,
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; XMM: movl $0,
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call void @llvm.memset.p0i8.i64(i8* %a, i8 0, i64 17, i32 0, i1 false)
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ret void
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}
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